International audienceThe long-term sustainability of the high-energy physics (HEP) research software ecosystem is essential to the field. With new facilities and upgrades coming online throughout the 2020s, this will only become increasingly important. Meeting the sustainability challenge requires a workforce with a combination of HEP domain knowledge and advanced software skills. The required software skills fall into three broad groups. The first is fundamental and generic software engineering (e.g., Unix, version control, C++, and continuous integration). The second is knowledge of domain-specific HEP packages and practices (e.g., the ROOT data format and analysis framework). The third is more advanced knowledge involving specialized te...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
International audienceThe long-term sustainability of the high-energy physics (HEP) research softwar...
Among the upgrades in current high energy physics (HEP) experiments and the new facilities coming on...
Developing, maintaining, and evolving the algorithms and software implementations for HEP experim...
New facilities of the 2020s, such as the High Luminosity Large Hadron Collider (HL-LHC), will be rel...
The rapid evolution of technology and the parallel increasing complexity of algorithmic analysis in ...
International audienceIn this paper we document the current analysis software training and onboardin...
Computing plays an essential role in all aspects of high energy physics. As computational technology...
With thousands of new members joining the HEP community every year, it is of paramount importance to...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
International audienceThe long-term sustainability of the high-energy physics (HEP) research softwar...
Among the upgrades in current high energy physics (HEP) experiments and the new facilities coming on...
Developing, maintaining, and evolving the algorithms and software implementations for HEP experim...
New facilities of the 2020s, such as the High Luminosity Large Hadron Collider (HL-LHC), will be rel...
The rapid evolution of technology and the parallel increasing complexity of algorithmic analysis in ...
International audienceIn this paper we document the current analysis software training and onboardin...
Computing plays an essential role in all aspects of high energy physics. As computational technology...
With thousands of new members joining the HEP community every year, it is of paramount importance to...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...
Realizing the physics programs of the planned and upgraded high-energy physics (HEP) experiments ove...